Liaoning Key Laboratory of Plant Pathology, College of Plant Protection, Shenyang Agricultural University, Shenyang, China.
Centre for Biological Disaster Prevention and Control, National Forestry and Grassland Administration, Shenyang, China.
Mol Plant Pathol. 2022 Sep;23(9):1361-1380. doi: 10.1111/mpp.13234. Epub 2022 Jun 7.
The molecular mode controlling cucumber green mottle mosaic virus (CGMMV)-induced watermelon blood flesh disease (WBFD) is largely unknown. In this study, we have found that application of exogenous boron suppressed CGMMV infection in watermelon fruit and alleviated WBFD symptoms. Our transcriptome analysis showed that the most up-regulated differentially expressed genes (DEGs) were associated with polyamine and auxin biosynthesis, abscisic acid catabolism, defence-related pathways, cell wall modification, and energy and secondary metabolism, while the down-regulated DEGs were mostly involved in ethylene biosynthesis, cell wall catabolism, and plasma membrane functions. Our virus-induced gene silencing results showed that silencing of SPDS expression in watermelon resulted in a higher putrescine content and an inhibited CGMMV infection correlating with no WBFD symptoms. SBT and TUBB1 were also required for CGMMV infection. In contrast, silencing of XTH23 and PE/PEI7 (low-level lignin, cellulose and pectin) and ATPS1 (low-level glutathione) promoted CGMMV accumulation. Furthermore, RAP2-3, MYB6, WRKY12, H2A, and DnaJ11 are likely to participate in host antiviral resistance. In addition, a higher (spermidine + spermine):putrescine ratio, malondialdehyde content, and lactic acid content were responsible for fruit decay and acidification. Our results provide new knowledge on the roles of boron in watermelon resistance to CGMMV-induced WBFD. This new knowledge can be used to design better control methods for CGMMV in the field and to breed CGMMV resistant watermelon and other cucurbit crops.
硼调控黄瓜绿斑驳花叶病毒诱导西瓜红肉病变的分子机制尚不清楚。本研究发现,外源硼的施加可以抑制西瓜果实中 CGMMV 的侵染,缓解西瓜红肉病变症状。转录组分析表明,上调表达的差异表达基因(DEGs)主要与多胺和生长素的生物合成、脱落酸代谢、防御相关途径、细胞壁修饰以及能量和次生代谢相关,而下调表达的 DEGs 主要参与乙烯生物合成、细胞壁代谢和质膜功能。病毒诱导的基因沉默结果表明,沉默西瓜 SPDS 表达会导致腐胺含量升高,CGMMV 侵染受到抑制,且没有西瓜红肉病变症状。SBT 和 TUBB1 也被证实是 CGMMV 侵染所必需的。相比之下,沉默 XTH23 和 PE/PEI7(低水平木质素、纤维素和果胶)以及 ATPS1(低水平谷胱甘肽)会促进 CGMMV 的积累。此外,RAP2-3、MYB6、WRKY12、H2A 和 DnaJ11 可能参与了寄主的抗病毒抗性。此外,较高的(腐胺+精胺)/腐胺比值、丙二醛含量和乳酸含量与果实腐烂和酸化有关。本研究为硼调控西瓜对 CGMMV 诱导的西瓜红肉病变的抗性提供了新的认识。该研究结果可以为田间 CGMMV 的防控提供新的思路,也可以用于培育 CGMMV 抗性西瓜和其他葫芦科作物。